py-minisign
August 9, 2026 ยท View on GitHub
A Python implementation of the Minisign <https://jedisct1.github.io/minisign/>_
signature system.
Installation
With uv <https://docs.astral.sh/uv/>_:
.. code:: shell
uv add py-minisign
With pip:
.. code:: shell
python3 -m pip install py-minisign
Verify a signature
.. code:: python
import minisign
public_key = minisign.PublicKey.from_base64(
"RWQf6LRCGA9i53mlYecO4IzT51TGPpvWucNSCh1CBM0QTaLn73Y7GFO3"
)
signature = minisign.Signature.from_bytes(
b"untrusted comment: signature from minisign secret key\n"
b"RWQf6LRCGA9i59SLOFxz6NxvASXDJeRtuZykwQepbDEGt87ig1BNpWaVWuNrm73YiIiJbq71Wi+dP9eKL8OC351vwIasSSbXxwA=\n"
b"trusted comment: timestamp:1555779966\tfile:test\n"
b"QtKMXWyYcwdpZAlPF7tE2ENJkRd1ujvKjlj1m9RtHTBnZPa5WKU5uWRs5GoP5M/VqE81QFuMKI5k/SfNQUaOAA=="
)
public_key.verify(b"test", signature)
verify() raises VerifyError if the signature is invalid.
Sign data
Secret keys loaded from disk are usually encrypted. Decrypt the key before signing and wipe its mutable secret buffers when it is no longer needed:
.. code:: python
import minisign
with minisign.SecretKey.from_file("/path/to/minisign.key") as secret_key:
secret_key.decrypt("strong password")
signature = secret_key.sign(
b"very important data",
trusted_comment="release 1.0",
)
print(bytes(signature).decode())
The default signing mode uses a BLAKE2b prehash. Pass prehash=False when a
legacy Ed signature is required.
Generate and store a key pair
KeyPair.generate() creates an unencrypted key using KDF_NONE. Calling
encrypt() upgrades it to scrypt and encrypts the secret key before it is
serialized:
.. code:: python
import os
import minisign
key_pair = minisign.KeyPair.generate()
with key_pair.secret_key as secret_key:
secret_key.encrypt("strong password")
with open(
os.open(
"/path/to/minisign.key",
os.O_CREAT | os.O_EXCL | os.O_WRONLY,
0o600,
),
"wb",
) as file:
file.write(bytes(secret_key) + b"\n")
with open("/path/to/minisign.pub", "wb") as file:
file.write(bytes(key_pair.public_key) + b"\n")
encrypt() accepts custom scrypt operation and memory limits. These values
are stored in the secret-key format, and the concrete N, r and p
parameters are derived from them in the same way as in Minisign:
.. code:: python
key_pair = minisign.KeyPair.generate()
key_pair.secret_key.encrypt(
"strong password",
opslimit=2_097_152,
memlimit=67_108_864,
)
Increasing these limits makes password derivation more expensive. Keep the defaults unless the additional cost has been measured for every system that will need to decrypt the key.
Change or remove a password
Decrypt and encrypt a secret key again to change its password:
.. code:: python
import minisign
secret_key = minisign.SecretKey.from_file("/path/to/minisign.key")
secret_key.decrypt("old password")
secret_key.encrypt("new password")
encrypt() generates a new random salt. The key identifier, Ed25519 key
material and public key remain unchanged, so existing signatures remain valid.
Use remove_password() to remove password protection completely:
.. code:: python
import minisign
secret_key = minisign.SecretKey.from_file("/path/to/minisign.key")
secret_key.remove_password("current password")
After this operation the key uses KDF_NONE. Serializing it with
bytes(secret_key) produces an unencrypted secret key; store it only in a
file with appropriately restricted permissions.
To intentionally keep a secret key unencrypted, serialize it without calling
encrypt():
.. code:: python
key_pair = minisign.KeyPair.generate()
encoded_secret_key = bytes(key_pair.secret_key)
Sign and verify files
.. code:: python
import minisign
public_key = minisign.PublicKey.from_file("/path/to/minisign.pub")
with minisign.SecretKey.from_file("/path/to/minisign.key") as secret_key:
secret_key.decrypt("strong password")
secret_key.sign_file(
"archive.tar.gz",
prehash=True,
drop_signature=True,
)
# Reads archive.tar.gz.minisig automatically.
public_key.verify_file("archive.tar.gz")
Comments
Comment properties contain only their values. They do not include the
untrusted comment: or trusted comment: prefixes; serialization adds
these prefixes automatically.
Untrusted comments are not authenticated and may be changed without invalidating a signature. Trusted comments are covered by the global signature.
Memory wiping
SecretKey.wipe() overwrites the mutable secret-key buffers and prevents the
key object from being used again. Using SecretKey as a context manager calls
wipe() automatically, including when the block exits with an exception.
Development
Install the project and development dependencies:
.. code:: shell
make sync
Run the test suite and static checks:
.. code:: shell
make format
make check
make test
Build the source distribution and wheel:
.. code:: shell
make build